Expertise: Not specified
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SysMO is a European transnational funding and research initiative on "Systems Biology of Microorganisms".
The goal pursued by SysMO was to record and describe the dynamic molecular processes going on in unicellular microorganisms in a comprehensive way and to present these processes in the form of computerized mathematical models.
Systems biology will raise biomedical and biotechnological research to a new quality level and contribute markedly to progress in understanding. Pooling European research ...
Projects: BaCell-SysMO, COSMIC, SUMO, KOSMOBAC, SysMO-LAB, PSYSMO, SCaRAB, MOSES, TRANSLUCENT, STREAM, SulfoSys, SysMO DB, SysMO Funders, SilicoTryp, Noisy-Strep
Web page: http://sysmo.net/
MOSES (Micro Organism Systems biology: Energy and Saccharomyces cerevisiae) develops a new Systems Biology approach, which is called 'domino systems biology'. It uses this to unravel the role of cellular free energy ('ATP') in the control and regulation of cell function. MOSES operates though continuous iterations between partner groups through a new systems-biology driven data-management workflow. MOSES also tries to serve as a substrate for three or more other SYSMO programs.
Programme: SysMO
Public web page: http://www.moses.sys-bio.net/
Organisms: Saccharomyces cerevisiae
The kit is used for the quantitative detection of ATP in yeast cells by luciferase driven bioluminescence. ATP extraction is done by boiling cells in TE buffer.
Creators: Martin Valachovic, Cornelia Klein
Submitter: Walter Glaser
Investigations: Effect of Benzoic Acid on ATP Levels
Studies: ATP levels under 10 mM benzoic acid stress, ATP levels under 30 mM and 50 mM benzoic acid s..., Test different ATP extraction protocols and con...
Assays: ATP measurement under 10mM benzoic acid stress, ATP measurement under 30mM benzoic acid stress, ATP measurement under 50mM benzoic acid stress, Compare ATP extraction methods